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首页> 外文期刊>Journal of Molecular Biology >NMR and crystal structures of the Pyrococcus horikoshii RadA intein guide a strategy for engineering a highly efficient and promiscuous intein
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NMR and crystal structures of the Pyrococcus horikoshii RadA intein guide a strategy for engineering a highly efficient and promiscuous intein

机译:霍氏热球菌RadA内含子的NMR和晶体结构指导了工程化高效且混杂的内含子的策略

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In protein splicing, an intervening protein sequence (intein) in the host protein excises itself out and ligates two split host protein sequences (exteins) to produce a mature host protein. Inteins require the involvement for the splicing of the first residue of the extein that follows the intein (which is Cys, Ser, or Thr). Other extein residues near the splicing junctions could modulate splicing efficiency even when they are not directly involved in catalysis. Mutual interdependence between this molecular parasite (intein) and its host protein (exteins) is not beneficial for intein spread but could be advantageous for intein survival during evolution. Elucidating extein-intein dependency has increasingly become important since inteins are recognized as useful biotechnological tools for protein ligation. We determined the structures of one of inteins with high splicing efficiency, the RadA intein from Pyrococcus horikoshii (PhoRadA). The solution NMR structure and the crystal structures elucidated the structural basis for its high efficiency and directed our efforts of engineering that led to rational design of a functional minimized RadA intein. The crystal structure of the minimized RadA intein also revealed the precise interactions between N-extein and the intein. We systematically analyzed the effects at the - 1 position of N-extein and were able to significantly improve the splicing efficiency of a less robust splicing variant by eliminating the unfavorable extein-intein interactions observed in the structure. This work provides an example of how unveiling structure-function relationships of inteins offer a promising way of improving their properties as better tools for protein engineering.
机译:在蛋白质剪接中,宿主蛋白质中的中间蛋白质序列(内含肽)将自身切除,并连接两个分裂的宿主蛋白质序列(内含肽)以产生成熟的宿主蛋白质。内含肽需要参与内含肽之后的外泌素第一残基的剪接(Cys,Ser或Thr)。剪接点附近的其他蛋白残基即使不直接参与催化,也可以调节剪接效率。此分子寄生虫(内含肽)与其宿主蛋白(外含肽)之间的相互依赖性不利于内含肽的扩散,但可能有利于进化过程中内含肽的存活。阐明tetein-intein依赖性已变得越来越重要,因为intein被认为是用于蛋白质连接的有用生物技术工具。我们确定了具有高剪接效率的一种内含肽的结构,即来自火球菌的RadA内含肽(PhoRadA)。溶液的NMR结构和晶体结构阐明了其高效的结构基础,并指导了我们的工程设计工作,从而合理设计了功能最小的RadA内含肽。最小化的RadA内含子的晶体结构也揭示了N-内在蛋白与内在蛋白之间的精确相互作用。我们系统地分析了N-extein -1位的作用,并通过消除在结构中观察到的不利的extein-intein相互作用,能够显着提高不太健壮的剪接变异体的剪接效率。这项工作提供了一个实例,揭示了内在蛋白的结构-功能关系如何提供一种有前途的方式来改善其作为蛋白质工程更好工具的特性。

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